Page 70 - Organic Electronics in Sensors and Biotechnology
P. 70
Scaling Effects in Organic Transistors and Transistor-Based Chemical Sensors 47
44. J. Takeya, C. Goldmann, S. Haas, K. P. Pernstich, B. Ketterer, and B. Batlogg,
J. Appl. Phys., 94(9):5800–5804 (2003); Christopher R. Newman, Reid J.
Chesterfield, Jeffrey A. Merlo, and C. Daniel Frisbie, Appl. Phys. Lett., 85(3):
422–424 (2004).
45. V. Y. Butko, X. Chi, D. V. Lang, and A. P. Ramirez, Appl. Phys. Lett., 83(23):
4773–4775 (2003).
46. P. F. Newman and D. F. Holcomb, Phys. Rev. Lett., 51(23):2144 (1983).
47. David J. Gundlach, LiLi Jia, and Thomas N. Jackson, IEEE Electron Dev. Lett.,
22(12):571–573 (2001).
48. J. Takeya, C. Goldmann, S. Haas, K. P. Pernstich, B. Ketterer, and B. Batlogg,
J. Appl. Phys., 94(9):5800–5804 (2003).
49. A. Dodabalapur, L. Torsi, and H. E. Katz, Science, 268(5208):270–271 (1995).
50. S. M. Sze, Physics of Semiconductor Devices, 2d ed., New York: Wiley, 1982,
pp. 451–453.
51. V. Podzorov, E. Menard, A. Borissov, V. Kiryukhin, J. A. Rogers, and M. E.
Gershenson, Phys. Rev. Lett., 93(8):086602 (Aug. 2004).
52. Gilles Horowitz, Riadh Hajlaoui, and Philippe Delannoy, J. Phys. III Fance,
5:355–371 (1995).
53. N. Karl, Synth. Met., 133–134:649–657 (2003).
54. J. Takeya, C. Goldmann, S. Haas, K. P. Pernstich, B. Ketterer, and B. Batlogg,
J. Appl. Phys., 94(9):5800–5804 (2003).
55. Christopher R. Newman, Reid J. Chesterfield, Jeffrey A. Merlo, and C. Daniel
Frisbie, Appl. Phys. Lett., 85(3):422–424 (2004).
56. P. M. Borsenberger and E. H. Magin, J. Sci, Physica B, 217:212–220 (1996).
57. E. J. Meijer, D. B. A. Rep, D. M. de Leeuw, M. Matters, P. T. Herwig, and T. M.
Klapwijk, Synth Met., 121:1351–1352 (2001).
58. L. Torsi, A. Dodabalapur, and H. E. Katz, J. Appl. Phys., 78(2):1088 (1995).
59. Anna B. Chwang and C. Daniel Frisbie, J. Phys. Chem. B, 104:12202–12209 (2000).
60. Liang Wang, Daniel Fine, Debarshi Basu, and Ananth Dodabalapur, J. Appl.
Phys., 101:054515 (2007).
61. N. Karl, J. Marktanner, R. Stehle, and W. Warta, Synth. Met., 41–43:2473 (1991).
62. W. Warta, R. Stehle, and N. Karl, Appl. Phys. A: Solids Surf., A36:163 (1985).
63. N. Karl, Synth. Met., 133–134:649–657 (2003).
64. L. B. Schein, A. Peled, and D. Glatz, J. Appl. Phys., 66(2):686–692 (1989).
65. J. Frenkel, Phys. Rev., 54:647–648 (1938).
66. W. D. Gill, J. Appl. Phys., 43(12):5033–5040 (1972).
67. Paul J. Freud, Phys. Rev. Lett., 29(17):1156–1159 (1972).
68. Liang Wang, Daniel Fine, Deepak Sharma, Luisa Torsi, and Ananth
Dodabalapur, Anal. Bioanal. Chem., 384(2):310–321 (Dec. 2005).
69. Martin Pope and Charles E. Swenberg (eds.), Electronic Processes in Organic
Crystals and Polymers, Oxford University Press, Oxford, 1999, pp. 343–369.
70. Hagen Klauk, Marcus Halik, Ute Zschieschang, Gunter Schmid, Wolfgang
Radlik, and Werner Weber, J. Appl. Phys., 92(9):5259 (2002).
71. J. Collet, O. Tharaud, A. Chapoton, and D. Vuillaume, Appl. Phys. Lett.,
76(14):1941 (2000).
72. M. Leufgen, U. Bass, T. Muck, T. Borzenko, G. Schmidt, J. Geurts, V. Wagner,
et al., Synth. Met., 146:341–345 (2004).
73. Yuanjua Zhang, Jason R. Patta, Santha Ambily, Yulong Shen, Daniel C. Ralph,
and George G. Malliaras, Adv. Mater., 15(19):1632 (2003).
74. Ch. Pannemann, T. Diekmann, and U. Hilleringmann, Microelectronic Engg.,
67–68:845–852 (2003).
75. Michael D. Ausin and Stephen Y. Chou, Appl. Phys. Lett., 81(23):4431–4433
(2002).
76. N. Koch, A. Kahn, J. Ghijsen, J.-J. Pireaux, J. Schwartz, R. L. Johnson, and
A. Elschner, Appl. Phys. Lett., 82(1):70 (2003).
77. P. G. Schroeder, C. B. France, J. B. Park, and B. A. Parkinson, J. Appl. Phys.,
91(5):3010 (2002).
78. N. J. Watkins, Li Yan, and Yongli Gao, Appl. Phys. Lett., 80(23):4384 (2002).
79. S. M. Sze, Physics of Semiconductor Devices, 2d ed., New York: Wiley, 1982,
pp. 520–527, 469–486.